Theoretical Modelling of Aeroheating on Sharpened Noses Under Rarefied Gas Effects and Nonequilibrium Real Gas Effects

Nonfiction, Science & Nature, Science, Physics, Mechanics, Technology, Engineering, Mechanical
Cover of the book Theoretical Modelling of Aeroheating on Sharpened Noses Under Rarefied Gas Effects and Nonequilibrium Real Gas Effects by Zhi-Hui Wang, Springer Berlin Heidelberg
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Zhi-Hui Wang ISBN: 9783662443651
Publisher: Springer Berlin Heidelberg Publication: August 28, 2014
Imprint: Springer Language: English
Author: Zhi-Hui Wang
ISBN: 9783662443651
Publisher: Springer Berlin Heidelberg
Publication: August 28, 2014
Imprint: Springer
Language: English

Theoretical Modelling of Aeroheating on Sharpened Noses under Rarefied Gas Effects and Nonequilibrium Real Gas Effects employs a theoretical modeling method to study hypersonic flows and aeroheating on sharpened noses under rarefied gas effects and nonequilibrium real gas effects that are beyond the scope of traditional fluid mechanics. It reveals the nonlinear and nonequilibrium features, discusses the corresponding flow and heat transfer mechanisms, and ultimately establishes an analytical engineering theory framework for hypersonic rarefied and chemical nonequilibrium flows. The original analytical findings presented are not only of great academic significance, but also hold considerable potential for applications in engineering practice. The study explores a viable new approach, beyond the heavily relied-upon numerical methods and empirical formulas, to the present research field, which could be regarded as a successful implementation of the idea and methodology of the engineering sciences.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Theoretical Modelling of Aeroheating on Sharpened Noses under Rarefied Gas Effects and Nonequilibrium Real Gas Effects employs a theoretical modeling method to study hypersonic flows and aeroheating on sharpened noses under rarefied gas effects and nonequilibrium real gas effects that are beyond the scope of traditional fluid mechanics. It reveals the nonlinear and nonequilibrium features, discusses the corresponding flow and heat transfer mechanisms, and ultimately establishes an analytical engineering theory framework for hypersonic rarefied and chemical nonequilibrium flows. The original analytical findings presented are not only of great academic significance, but also hold considerable potential for applications in engineering practice. The study explores a viable new approach, beyond the heavily relied-upon numerical methods and empirical formulas, to the present research field, which could be regarded as a successful implementation of the idea and methodology of the engineering sciences.

More books from Springer Berlin Heidelberg

Cover of the book Cement Replacement Materials by Zhi-Hui Wang
Cover of the book Novel Chemotherapeutic Agents: Preactivation in the Treatment of Cancer and AIDS by Zhi-Hui Wang
Cover of the book Statistik angewandt by Zhi-Hui Wang
Cover of the book Dankbarkeit by Zhi-Hui Wang
Cover of the book Die Softwareindustrie by Zhi-Hui Wang
Cover of the book The Liberalization of Maritime Transport Services by Zhi-Hui Wang
Cover of the book Applied General Equilibrium by Zhi-Hui Wang
Cover of the book Übernahme und Gründung einer Zahnarztpraxis by Zhi-Hui Wang
Cover of the book Nanostructured Materials for Next-Generation Energy Storage and Conversion by Zhi-Hui Wang
Cover of the book Water Cycle Management by Zhi-Hui Wang
Cover of the book Surface Finishing Theory and New Technology by Zhi-Hui Wang
Cover of the book Endocrine and Neuroendocrine Surgery by Zhi-Hui Wang
Cover of the book Future Trends in Biotechnology by Zhi-Hui Wang
Cover of the book Schallpegelmesstechnik und ihre Anwendung by Zhi-Hui Wang
Cover of the book Radiation Dose from Multidetector CT by Zhi-Hui Wang
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy